Malmström Johan, Larsen Kristoffer, Malmström Lars, Tufvesson Ellen, Parker Ken, Marchese Jason, Williamson Brian, Patterson Dale, Martin Steve, Juhasz Peter, Westergren-Thorsson Gunilla, Marko-Varga György
Cell & Molecular Biology, BMC, C13, University of Lund, Lund, Sweden.
Electrophoresis. 2003 Nov;24(21):3806-14. doi: 10.1002/elps.200305619.
Miniaturized liquid chromatography nanoseparation in combination with minigel fractionation of human primary cell nuclei is presented. We obtained high-sensitivity and high-throughput identification of expressed proteins by subcellular fractionation and nanocapillary liquid chromatography interfaced to both electrospray ionization (ESI)- and matrix-assisted laser desorption/ionisation (MALDI) tandem mass spectrometry. The reversed-phase nanocapillary eluents were applied directly onto the MALDI target plate as discrete crystal spots using in-line matrix infusion. When working with primary cells, only a limited amount of sample is available. To maximize the number of identified proteins from a restricted amount of sample, miniaturized sample preparation protocols and nanoflow separation is a necessity, especially when working with low-abundant proteins. From the same isolated nuclear sample, complementary separation of intact proteins by two-dimensional (2-D) gel electrophoresis was made. In total 594 gene products from the nuclear preparations were identified out of which 261 were unique. Several proteins involved in transcriptional events were identified such as TATA-binding protein, EBNA-co-activator, and interleukin enhancer binding proteins, indicating that sufficient proteomic depth is obtained to study transcriptional controlling events. Our results suggest that by sample prefractionation and downscaled nanoflow separation along with a combined mass spectrometry strategy, it is possible to identify a large number of nuclear proteins from human primary cells. These findings are of particular importance due to the disease link of these targets cells.
本文介绍了将小型化液相色谱纳米分离与人原代细胞核的微型凝胶分级分离相结合的方法。我们通过亚细胞分级分离以及与电喷雾电离(ESI)和基质辅助激光解吸/电离(MALDI)串联质谱联用的纳米毛细管液相色谱,实现了对表达蛋白的高灵敏度和高通量鉴定。使用在线基质注入,将反相纳米毛细管洗脱液作为离散的晶体斑点直接应用于MALDI靶板上。在处理原代细胞时,可用的样品量有限。为了从有限量的样品中鉴定出尽可能多的蛋白质,小型化的样品制备方案和纳流分离是必要的,尤其是在处理低丰度蛋白质时。从同一分离的核样品中,通过二维(2-D)凝胶电泳对完整蛋白质进行了互补分离。总共鉴定出了594种来自核制剂的基因产物,其中261种是独特的。鉴定出了几种参与转录事件的蛋白质,如TATA结合蛋白、EBNA共激活因子和白细胞介素增强子结合蛋白,这表明获得了足够的蛋白质组深度来研究转录控制事件。我们的结果表明,通过样品预分级分离和缩小规模的纳流分离以及组合质谱策略,有可能从人原代细胞中鉴定出大量的核蛋白。由于这些靶细胞与疾病的关联,这些发现尤为重要。